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二硫化钒的二维晶格:纳米尺度上铁磁性和半金属性的出现。

Two-Dimensional Lattices of VN: Emergence of Ferromagnetism and Half-Metallicity on Nanoscale.

作者信息

Kuklin Artem V, Shostak Svetlana A, Kuzubov Alexander A

机构信息

Siberian Federal University , 79 Svobodny pr ., Krasnoyarsk 660041 , Russia.

Department of Chemistry , Kyungpook National University , 80 Daehakro, Bukgu , Daegu 41566 , Republic of Korea.

出版信息

J Phys Chem Lett. 2018 Mar 15;9(6):1422-1428. doi: 10.1021/acs.jpclett.7b03276. Epub 2018 Mar 7.

Abstract

Two-dimensional (2D) ferromagnets with high spin-polarization ratio and high Curie temperature are crucial for developing next-generation spintronic nanodevices. Using first-principles calculations, we predict two polymorphic modifications ( t-VN and h-VN) of 2D VN lattices that have robust intrinsic ferromagnetic properties and high Curie temperatures. Whereas t-VN has 99.9% of spin polarization at the Fermi level, h-VN possesses a half-metallic type of conductivity and keeps it after contact with semiconducting MoS, which can be used as the substrate for h-VN synthesis and valley polarized contacts. Magnetocrystalline anisotropy energy of 2D VN polymorphs is found to be at least an order larger than those of Fe and Ni bulks. The phonon spectra and ab initio molecular dynamic simulation prove that 2D VN lattices have a high thermodynamic stability. These advantages demonstrate that the VN monolayers should be promising candidates for low-dimensional spintronic devices.

摘要

具有高自旋极化率和高居里温度的二维(2D)铁磁体对于开发下一代自旋电子纳米器件至关重要。通过第一性原理计算,我们预测了二维VN晶格的两种多晶型变体(t-VN和h-VN),它们具有强大的本征铁磁特性和高居里温度。t-VN在费米能级处具有99.9%的自旋极化率,而h-VN具有半金属类型的导电性,并且在与半导体MoS接触后仍保持这种特性,MoS可作为h-VN合成和谷极化接触的衬底。发现二维VN多晶型的磁晶各向异性能至少比铁和镍块体的磁晶各向异性能大一个数量级。声子谱和从头算分子动力学模拟证明二维VN晶格具有高的热力学稳定性。这些优点表明VN单层应该是低维自旋电子器件的有前途的候选材料。

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